Literature DB >> 26711992

Small fluorescence-activating and absorption-shifting tag for tunable protein imaging in vivo.

Marie-Aude Plamont1, Emmanuelle Billon-Denis1, Sylvie Maurin1, Carole Gauron2, Frederico M Pimenta1, Christian G Specht3, Jian Shi1, Jérôme Quérard1, Buyan Pan1, Julien Rossignol1, Karine Moncoq4, Nelly Morellet5, Michel Volovitch6, Ewen Lescop5, Yong Chen1, Antoine Triller3, Sophie Vriz7, Thomas Le Saux1, Ludovic Jullien8, Arnaud Gautier8.   

Abstract

This paper presents Yellow Fluorescence-Activating and absorption-Shifting Tag (Y-FAST), a small monomeric protein tag, half as large as the green fluorescent protein, enabling fluorescent labeling of proteins in a reversible and specific manner through the reversible binding and activation of a cell-permeant and nontoxic fluorogenic ligand (a so-called fluorogen). A unique fluorogen activation mechanism based on two spectroscopic changes, increase of fluorescence quantum yield and absorption red shift, provides high labeling selectivity. Y-FAST was engineered from the 14-kDa photoactive yellow protein by directed evolution using yeast display and fluorescence-activated cell sorting. Y-FAST is as bright as common fluorescent proteins, exhibits good photostability, and allows the efficient labeling of proteins in various organelles and hosts. Upon fluorogen binding, fluorescence appears instantaneously, allowing monitoring of rapid processes in near real time. Y-FAST distinguishes itself from other tagging systems because the fluorogen binding is highly dynamic and fully reversible, which enables rapid labeling and unlabeling of proteins by addition and withdrawal of the fluorogen, opening new exciting prospects for the development of multiplexing imaging protocols based on sequential labeling.

Entities:  

Keywords:  directed evolution; fluorescence imaging; fluorogenic ligand

Mesh:

Substances:

Year:  2015        PMID: 26711992      PMCID: PMC4725535          DOI: 10.1073/pnas.1513094113

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  48 in total

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Review 8.  Fluorescent proteins: maturation, photochemistry and photophysics.

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